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Organic Reactions Kinds of Reactions Mechanisms (polar, non- polar) Bond Dissociation Energy Reaction Profiles
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Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Jan 11, 2016

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Page 1: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Organic Reactions

Kinds of Reactions

Mechanisms (polar, non-polar)

Bond Dissociation Energy

Reaction Profiles

Page 2: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Types of Reactions

• Addition Reactions

• Elimination Reactions

C=CH

H

H

H+ HBr C C

H

H

Br

H

H

H

C=CH

H

H

H+ NaOHC C

H

H

Br

H

H

H + H2O

+ NaBr

Page 3: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Types of Reactions

• Substitution:– Polar

– Non-polar

H

BrHH + KCN

H

NCHH + KBr

CH4 + Cl2 CH3Cl + HCllight (h)

Page 4: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Rearrangement

Page 5: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.
Page 6: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Definitions• Mechanism: Complete step-by-step of exactly which

bonds break and which bonds form and in what order.

• Thermodynamics: The study of the energy changes that occur in chemical transformations. This allows for comparison of stability of reactants and products.

• Kinetics: The study of reaction rates, determining which products are formed most rapidly. One can predict how the rate will change with changing conditions.

Page 7: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Reaction Profile (Exothermic)rate = kr[A] [B]

a b

Page 8: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

2nd Order Reaction

CH3Br + OH CH3OH + Br

Rate = k[CH3Br][OH ]

second order rate kinetics

Page 9: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

1st Order Reaction

(CH3)3CBr + H2O (CH3)3OH + HBr

Rate = k[(CH3)3CBr]

First order rate kinetics

Page 10: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Bond Breaking:Non-polar and Polar

Page 11: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Bond Forming:Non-polar and Polar

Page 12: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Non-polar Reaction Involves Free Radicals

Page 13: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Free Radicals are Neutral, but Electron-Deficient

Page 14: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Free Radical Chlorination

Page 15: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Experimental Evidence Helps to Determine Mechanism

• Chlorination does not occur at room temperature in the dark.

• The most effective wavelength of light is blue that is strongly absorbed by Cl2 gas.

• The light-initiated reaction has a high quantum yield (many molecules of product are formed from each photon of light).

Page 16: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Free Radical Species are Constantly Generated Throughout the Reaction

Propagation

Page 17: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Termination: Reaction of any 2 Radicals

Page 18: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.
Page 19: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Enthalpy of Reaction (Ho) Measures Difference in Strength of Bonds Broken and Bonds Formed

Bond Dissociation Energy

Page 20: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.
Page 21: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Ho = bonds broken-bonds formed

Page 22: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Hrxn = -105 kJ/mol

- 351

+ 435 - 431

+ 242

= - 109 KJ/mol

= + 4 KJ/mol

Page 23: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.
Page 24: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Why Not This Mechanism?

Page 25: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.
Page 26: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Chlorination of Propane

60%

40%

Page 27: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

H’s are not abstracted at the same rate.

Reactivity of Primary (1o) H abstraction

40%6H

= 6.7

Reactivity of Secondary (2o) H abstraction 60%2H

= 30

Rate of 2o H abstraction : 1o H abstraction

= 4.5:1

Page 28: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.
Page 29: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.
Page 30: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Chlorination of Methylpropane

C

CH3

CH3

CH3 H HCH3

CH3

CH2

C CH3

CH3

CH3

C.++ Cl

.

.

.

C

CH2

CH3

CH3 H

.C

CH3

CH3

CH3

+ Cl2

+ Cl2 C

CH3

CH3

CH3 Cl

C

CH2Cl

CH3

CH3 H 65%

35%

+ Cl

+ Cl

.

.

Page 31: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Tertiary H’s removed 5.5 times more readily than primary H’s in

chlorination reactions

Page 32: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

3o Radicals are Easiest to Form

Page 33: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Stability of Free Radicals

Page 34: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.
Page 35: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Bromination is Very Selective

Page 36: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.
Page 37: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

RDS in Bromination is highly endothermic

Page 38: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Consider the free radical monochlorination of 2,2,5-trimethylhexane. Draw all of the

unique products (ignore stereoisomers; use zig-zag structures please) and predict the ratio

or percent composition of the products.The relative reactivity of H abstraction in a

chlorination reaction: 1o: 2o: 3o = 1: 4.5: 5.5

Page 39: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Chlorofluorocarbons and the

Depletion of Ozone .O3 O2 + O

h

C Cl

F

F

Cl Cl

F

F

C . .

. .

. .

Cl+

Cl + O3 ClO + O2

ClO + O Cl . + O2

O3 + O 2 O2.net reaction

i)

ii)

hultraviolet

a CFC

Page 40: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Polar Reactions:Nucleophiles & Electrophiles

Page 41: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.
Page 42: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Nucleophiles are BasesElectrophiles are Acids

Page 43: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Addition of HBr to Ethylene

Page 44: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Reactions Often Go Through Intermediates

Page 45: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Transition State

Page 46: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.
Page 47: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

Addition Reaction is a Two-Step Mechanism

Page 48: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.
Page 49: Organic Reactions Kinds of Reactions Mechanisms (polar, non-polar) Bond Dissociation Energy Reaction Profiles.

How Many Mechanistic Steps?How Many Intermediates?

How Many Transition States?Which Step is Rate-Determining?